Targeted expression of tetanus neurotoxin interferes with behavioral responses to sensory input in Drosophila.

A. Keller, S. Sweeney, T. Zars, C. O’Kane, M. Heisenberg
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引用次数: 48

Abstract

Targeted inactivation of neurons by expression of toxic gene products is a useful tool to assign behavioral functions to specific neurons or brain structures. Of a variety of toxic gene products tested, tetanus neurotoxin light chain (TNT) has the least severe side effects and can completely block chemical synapses. By using the GAL4 system to drive TNT expression in a subset of chemo- and mechanosensory neurons, we detected walking and flight defects consistent with blocking of relevant sensory information. We also found, for the first time, an olfactory behavioral phenotype associated with blocking of a specific subset of antennal chemoreceptors. Similar behavioral experiments with GAL4 lines expressing in different subsets of antennal chemoreceptors should contribute to an understanding of olfactory coding in Drosophila. To increase the utility of the GAL4 system for such purposes, we have designed an inducible system that allows us to circumvent lethality caused by TNT expression during early development.
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破伤风神经毒素的靶向表达干扰果蝇对感觉输入的行为反应。
通过表达有毒基因产物来靶向灭活神经元是将行为功能分配给特定神经元或脑结构的有用工具。在测试的多种有毒基因产物中,破伤风神经毒素轻链(TNT)具有最不严重的副作用,并且可以完全阻断化学突触。通过使用GAL4系统驱动TNT在化学和机械感觉神经元子集中的表达,我们检测到与相关感觉信息阻断一致的行走和飞行缺陷。我们还首次发现,嗅觉行为表型与触角化学感受器特定子集的阻断有关。对触角化学感受器不同亚群表达的GAL4细胞系进行类似的行为实验,有助于理解果蝇的嗅觉编码。为了提高GAL4系统在这方面的效用,我们设计了一个诱导系统,使我们能够在早期发育期间规避TNT表达引起的致命性。
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